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How large-scale subsidence affects stratocumulus transitions

机译:大规模沉降如何影响划分性转变

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Some climate modeling results suggest that the Hadley circulation might weaken in a future climate, causing a subsequent reduction in the large-scale subsidence velocity in the subtropics. In this study we analyze the cloud liquid water path (LWP) budget from large-eddy simulation (LES) results of three idealized stratocumulus transition cases, each with a different subsidence rate. As shown in previous studies a reduced subsidence is found to lead to a deeper stratocumulus-topped boundary layer, an enhanced cloud-top entrainment rate and a delay in the transition of stratocumulus clouds into shallow cumulus clouds during its equatorwards advection by the prevailing trade winds. The effect of a reduction of the subsidence rate can be summarized as follows. The initial deepening of the stratocumulus layer is partly counteracted by an enhanced absorption of solar radiation. After some hours the deepening of the boundary layer is accelerated by an enhancement of the entrainment rate. Because this is accompanied by a change in the cloud-base turbulent fluxes of moisture and heat, the net change in the LWP due to changes in the turbulent flux profiles is negligibly small.
机译:一些气候建模结果表明,Hadley循环可能在未来的气候下削弱,导致亚热带中的大规模沉降速度下降。在这项研究中,我们将云液体水路(LWP)预算从大型涡流模拟(LES)分析为三种理想化的划分型过渡案件,每个过渡案件具有不同的沉降率。如先前的研究所示,发现降低的沉降导致更深的划分的血统顶部边界层,增强的云层夹带速率和延迟在其赤道贸易风中的赤道平流期间在浅层云中转变为浅层云层。减少沉降率的效果可以如下综述。通过增强的太阳辐射吸收部分地抵消了划分层的初始加深。几个小时后,通过提高夹带速率加速边界层的深化。因为这伴随着云基湍流通量的变化,因为湍流磁通型材的变化导致的LWP的净变化是可忽略的。

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